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首页> 外文期刊>Biotechnology and Bioengineering >Effect of inducible co-overexpression of protein disulfide isomerase and endoplasmic reticulum oxidoreductase on the specific antibody productivity of recombinant Chinese hamster ovary cells.
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Effect of inducible co-overexpression of protein disulfide isomerase and endoplasmic reticulum oxidoreductase on the specific antibody productivity of recombinant Chinese hamster ovary cells.

机译:蛋白质二硫键异构酶和内质网氧化还原酶诱导型共表达对重组中国仓鼠卵巢细胞特异性抗体生产力的影响。

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摘要

To enhance specific antibody (Ab) productivity (q(Ab)) of recombinant Chinese hamster ovary (rCHO) cells, post-translational limitations in the endoplasmic reticulum during antibody production should be relieved. Previously, we reported that overexpression of protein disulfide isomerase (PDI), which catalyzes disulfide bond exchanges and assists in protein folding of newly synthesized proteins, enhanced q(Ab) of rCHO cells by about 27% (Mohan et al., 2007, Biotechnol Bioeng 98:611-615). Since the rate limiting step in disulfide bond formation is found to be the regeneration of oxidized PDI, the oxidation state of PDI, as well as the amount of PDI, might be important. Endoplasmic reticulum oxidoreductase (ERO1L) maintains PDI in an oxidized state so that disulfide bond formation occurs. Here, PDI and its helper protein, ERO1L were overexpressed in rCHO cells producing an Ab in an attempt to ease the bottleneck in disulfide bond formation, and hence, Ab folding and secretion. Transient expression of ERO1L alone and with PDI resulted in enhanced q(Ab) by 37% and 55%, respectively. In contrast, under stable inducible co-overexpression of PDI and ERO1L, the q(Ab) was unaffected or negatively affected by varying degrees, depending on the individual expression levels of these genes. In stable clones with altered oxidation state of PDI due to co-overexpression of PDI and ERO1L, secretion of Ab was hindered and PDI-associated retention of Ab was seen in the cells. Under transient gene expression, secretion of Ab was not compromised. The data presented here suggests a possible mechanism of PDI/ERO1L interaction with the target Ab and shows how the expression levels of these proteins could affect the q(Ab) of this Ab-producing rCHO cell line.
机译:为了提高重组中国仓鼠卵巢(rCHO)细胞的特异性抗体(Ab)生产率(q(Ab)),应减轻抗体生产过程中内质网的翻译后限制。以前,我们报道过蛋白二硫键异构酶(PDI)的过表达催化二硫键交换并协助新合成的蛋白折叠,将rCHO细胞的q(Ab)增强了约27%(Mohan等人,2007,Biotechnol Bioeng 98:611-615)。由于发现二硫键形成中的限速步骤是氧化的PDI的再生,因此PDI的氧化态以及PDI的量可能很重要。内质网氧化还原酶(ERO1L)将PDI维持在氧化状态,从而形成二硫键。在这里,PDI及其辅助蛋白ERO1L在产生Ab的rCHO细胞中过度表达,试图缓解二硫键形成的瓶颈,从而减轻Ab的折叠和分泌。单独和与PDI一起瞬时表达ERO1L可使q(Ab)分别提高37%和55%。相反,在稳定的PDI和ERO1L诱导共表达下,q(Ab)不受这些基因的表达水平影响或受到不同程度的负面影响。在稳定的克隆中,由于PDI和ERO1L的共过量表达,PDI的氧化态发生了改变,Ab的分泌受到阻碍,并且在细胞中发现了与PDI相关的Ab保留。在瞬时基因表达下,Ab的分泌没有受到损害。此处提供的数据暗示了PDI / ERO1L与靶标Ab相互作用的可能机制,并显示了这些蛋白的表达水平如何影响这种产生Ab的rCHO细胞系的q(Ab)。

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